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<titleInfo><title>Optimized Operating Points for Power Electronic Building Blocks</title></titleInfo>


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<name type="personal">
  <namePart type="given">Maximilian</namePart>
  <namePart type="family">Lammersen</namePart>
  <role><roleTerm type="text">author</roleTerm> </role><identifier type="local">81623</identifier><description xsi:type="identifierDefinition" type="orcid">0009-0001-9092-9088</description></name>
<name type="personal">
  <namePart type="given">Rainer</namePart>
  <namePart type="family">Rasche</namePart>
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<abstract lang="eng">Systems that place high demands on availability are typically modular in design. However, a modular design also offers potential for optimized operation under norma requirements. In this paper we present an approach to find optimal operating points from the characteristic fields of individual modules. Our approach consists of a two-step procedure. In the first stage, Pareto sets are calculated using the NSGA-II genetic algorithm. The second stage contains a heuristic that finds situationally optimal operating points using a defined operating strategy.</abstract>

<originInfo><publisher>*</publisher><dateIssued encoding="w3cdtf">2023</dateIssued><place><placeTerm type="text">Yokohama</placeTerm></place>
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<language><languageTerm authority="iso639-2b" type="code">eng</languageTerm>
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<subject><topic>modularity</topic><topic>optimization</topic><topic>PEBB</topic><topic>operating strategy</topic><topic>genetic algorithm</topic><topic>Pareto</topic>
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<chicago-de>Lammersen, Maximilian und Rainer Rasche. &lt;i&gt;Optimized Operating Points for Power Electronic Building Blocks&lt;/i&gt;. &lt;i&gt;Conference proceedings of Mecatronics &amp;#38; AISM 2023&lt;/i&gt;. *.</chicago-de>
<chicago>Lammersen, Maximilian, and Rainer Rasche. &lt;i&gt;Optimized Operating Points for Power Electronic Building Blocks&lt;/i&gt;. &lt;i&gt;Conference Proceedings of Mecatronics &amp;#38; AISM 2023&lt;/i&gt;. *, n.d.</chicago>
<bjps>&lt;b&gt;Lammersen M and Rasche R&lt;/b&gt; (n.d.) &lt;i&gt;Optimized Operating Points for Power Electronic Building Blocks&lt;/i&gt;. *.</bjps>
<din1505-2-1>&lt;span style=&quot;font-variant:small-caps;&quot;&gt;Lammersen, Maximilian&lt;/span&gt; ; &lt;span style=&quot;font-variant:small-caps;&quot;&gt;Rasche, Rainer&lt;/span&gt;: &lt;i&gt;Optimized Operating Points for Power Electronic Building Blocks&lt;/i&gt; : *</din1505-2-1>
<havard>M. Lammersen, R. Rasche, Optimized Operating Points for Power Electronic Building Blocks, *, n.d.</havard>
<van>Lammersen M, Rasche R. Optimized Operating Points for Power Electronic Building Blocks. Conference proceedings of Mecatronics &amp;#38; AISM 2023. *;</van>
<ama>Lammersen M, Rasche R. &lt;i&gt;Optimized Operating Points for Power Electronic Building Blocks&lt;/i&gt;. *</ama>
<ieee>M. Lammersen and R. Rasche, &lt;i&gt;Optimized Operating Points for Power Electronic Building Blocks&lt;/i&gt;. *.</ieee>
<apa>Lammersen, M., &amp;#38; Rasche, R. (n.d.). Optimized Operating Points for Power Electronic Building Blocks. In &lt;i&gt;Conference proceedings of Mecatronics &amp;#38; AISM 2023&lt;/i&gt;. Mecatronics &amp;#38; AISM2023, Yokohama. *.</apa>
<mla>Lammersen, Maximilian, and Rainer Rasche. “Optimized Operating Points for Power Electronic Building Blocks.” &lt;i&gt;Conference Proceedings of Mecatronics &amp;#38; AISM 2023&lt;/i&gt;, *.</mla>
<ufg>&lt;b&gt;Lammersen, Maximilian/Rasche, Rainer&lt;/b&gt;: Optimized Operating Points for Power Electronic Building Blocks, o. O. u. J. .</ufg>
<short>M. Lammersen, R. Rasche, Optimized Operating Points for Power Electronic Building Blocks, *, n.d.</short>
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